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基于荧光的亚硫酸氢盐传感:一种苯乙烯基苯并噻唑染料离子传感的新方面及对亚硝酸盐干扰的理解

Fluorescence based metabisulfite sensing: New aspects of ion sensing by a styryl benzothiazolium dye and understanding nitrite interference.

作者信息

Saha Sayani, Tiwari Ratnesh, Parameswaran Preethi, Patidar Rajesh, Srivastava Nidhi, Ranjan Nihar

机构信息

Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research-Raebareli, New Transit Campus, Lucknow, Uttar Pradesh 226002, India; Department of Biotechnology, National Institute of Pharmaceutical Education and Research-Raebareli, New Transit Campus, Lucknow, Uttar Pradesh 226002, India.

Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research-Raebareli, New Transit Campus, Lucknow, Uttar Pradesh 226002, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 5;324:124821. doi: 10.1016/j.saa.2024.124821. Epub 2024 Jul 15.

Abstract

Detection of specific ions using fluorescent probes has relevance in several areas of therapeutics development and environmental science. Here, we provide new perspectives to the sensing of a styryl benzothiazolium-based fluorescent compound 1 and report that sensing properties are for sulfite ions in general with highest preference for metabisulfite ions (SO) adding to its previously determined role as a bisulfite ion sensor. This probe exhibits its sensing action via an addition reaction in which the styryl double bond gets reduced. The interference studies highlighted that the sequence of addition of nitrite and metabisulfite has a bearing on the overall interference outcome. Spectroscopic studies revealed that the order of preferential sensing of sulfites and sulfide ion is SO > HSO > SO > S. Although this probe displays robust sensing on its own through fluorescence quenching, its fluorescence emission can be enhanced at much lower concentrations in the presence of a G-quadruplex DNA without compromising the outcome of the sensing.

摘要

使用荧光探针检测特定离子在治疗学开发和环境科学的多个领域都具有重要意义。在此,我们为基于苯乙烯基苯并噻唑鎓的荧光化合物1的传感提供了新的视角,并报告其传感特性一般针对亚硫酸根离子,对焦亚硫酸根离子(SO)具有最高偏好,这进一步补充了其先前确定的作为亚硫酸氢根离子传感器的作用。该探针通过加成反应表现出其传感作用,其中苯乙烯基双键被还原。干扰研究表明,亚硝酸根和焦亚硫酸根的添加顺序对整体干扰结果有影响。光谱研究表明,亚硫酸根和硫离子的优先传感顺序为SO > HSO > SO > S。尽管该探针通过荧光猝灭自身显示出强大的传感能力,但在存在G-四链体DNA的情况下,在低得多的浓度下其荧光发射可以增强,而不会影响传感结果。

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